CASE DV202 STATIC SMOOTH DRUM ROLLER

CASE DV202 CASE DV202 STATIC SMOOTH DRUM ROLLER equipment image

Equipment Overview

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OEM
CASE
Model
DV202
Year of Manufacture
-
Category
STATIC SMOOTH DRUM ROLLER

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Technical Description

The CASE DV202 static smooth drum roller is a compact, highly efficient compaction machine designed for civil engineering and construction applications. It features dual steel drums, each with a diameter of 2.5 feet (29 inches) and a width of 47.3 inches, providing a uniform and smooth compaction surface. The roller delivers centrifugal forces of 7,159 lbs (high) and 5,242 lbs (low) to optimize soil and asphalt compaction, with vibration frequencies ranging between 3,180 and 3,720 vibrations per minute (53 to 62 Hz) and a nominal amplitude of 0.1 inches at both high and low settings. The static linear load is rated at 63 pounds per inch, ensuring effective ground pressure distribution. Powered by a Deutz D2011 L2 Tier III certified engine producing 31 hp (23 kW), the DV202 balances power and environmental compliance. Its fuel capacity is 15.9 gallons, with an engine oil capacity of 1.7 gallons and a hydraulic fluid capacity of 10 gallons. The machine has a maximum travel speed of 8.5 mph (13 kph) and an operating weight of approximately 5,950 lbs. Dimensional specifications include a height of 8.8 feet to the top of the cab, an overall length of approximately 8.7 feet, a width of 4.3 feet, ground clearance of 12 inches, a 5.7-foot wheelbase, and a tight turning radius of 7.8 feet, allowing for excellent maneuverability in confined spaces. This combination of capabilities makes the CASE DV202 a versatile and reliable choice for roadwork and site compaction projects.

Technical Attributes

Centrifugal Force
7159 lb-ft
Drum Width
47 ''

Data Accuracy and Verification

Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.

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